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Genetic diversity and population structure of the invasive alien red swamp crayfish

机译:外来入侵红色沼泽小龙虾的遗传多样性和种群结构

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High genetic diversity is thought to characterize successful invasive species, as the potential to adapt to new environments is enhanced and inbreeding is reduced. The red swamp crayfish, Procambarus clarkii, native to northeastern Mexico and southcentral USA was introduced to Nanjing, China from Japan in 1929. Little is known about the genetic diversity and population structure of this species in China. We examined the genetic diversity and population structure of six P. clarkii populations using nine polymorphic microsatellites. Among the six populations, Nanjing population showed the highest allele number, allele richness and gene diversity, which is consistent with records indicating Nanjing may be the first site of introduction. In all six populations, significant heterozygote deficit was observed, suggesting founder effects and non-random mating. Analysis of bottleneck under infinite allele model, stepwise mutation model and two-phased model of mutation revealed evidence of a recent bottleneck in all these populations. Pairwise genetic distance analysis, AMOVA and assignment tests demonstrated high genetic differentiation between populations. Pairwise genetic distance did not fit the pairwise geographic distance, suggesting that human mediated dispersal have played a role in the population expansion and genetic differentiation.
机译:人们认为,高遗传多样性是成功入侵物种的特征,因为适应新环境的潜力增加了,近交繁殖减少了。红色沼泽小龙虾Procambarus clarkii,原产于墨西哥东北部和美国中南部,于1929年从日本引入中国南京。对该物种的遗传多样性和种群结构知之甚少。我们使用九个多态微卫星检查了六个克氏疟原虫种群的遗传多样性和种群结构。在这六个种群中,南京种群的等位基因数量,等位基因丰富度和基因多样性最高,这与记录表明南京可能是第一个引入位点的记录一致。在所有六个种群中,均观察到显着的杂合子缺陷,这表明建立者效应和非随机交配。在无限等位基因模型,逐步突变模型和两阶段突变模型下的瓶颈分析揭示了所有这些种群中最近出现瓶颈的证据。配对遗传距离分析,AMOVA和分配测试证明了种群之间的高度遗传差异。成对的遗传距离与成对的地理距离不符,表明人类介导的传播在种群扩展和遗传分化中发挥了作用。

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